Huang Hua, Li Huan, Zhao Ting, Khan Aamir Ali, Pan Ruining, Wang Sijia, Wang Shensen, Liu Xinhui
Center of Excellence for Environmental Safety and Biological Effects, Beijing International Science and Technology Cooperation Base for Antiviral Drugs, Faculty of Environment and Life, Beijing University of Technology, Beijing 100124, China.
Department of Nutrition, The Affiliated Hospital of Qingdao University, Qingdao 266000, China.
J Cancer. 2022 Jan 1;13(3):906-917. doi: 10.7150/jca.66404. eCollection 2022.
FAM110A belongs to the FAM110 family, which mainly functions in biological processes associated with the cell cycle. However, the biological functions in which FAM110A participates are largely undefined. In particular, its potential role in cancer remains unknown. The goal of this study was to uncover the role and mechanism of FAM110A in pancreatic cancer. Based on bioinformatics databases, qPCR and Western blot assays, we verified the elevated expression level of FAM110A in PDAC. Subsequently, FAM110A, HIST1H2BK and TSPAN1 overexpression or knockdown stable transfected cells were employed for biological functions' studies to explore the role in PDAC and . RNA-Seq, Western blot and luciferase-reporter assays were used to explore mechanism of FAM110A action in PDAC, and the involved pathway was verified by tumor phenotypic rescue experiments. In this study, we demonstrated for the first time that FAM110A is an oncogene that promotes cell proliferation, migration, invasion and tumorigenesis in pancreatic cancer. HIST1H2BK was identified as the downstream target of FAM110A, while the promotion effect caused by FAM110A overexpression could be abolished by HIST1H2BK knockdown. Moreover, for the first time, we revealed the oncogenic role of HIST1H2BK in pancreatic cancer, and the tumor-promoting capacity of HIST1H2BK may be associated with its regulatory effect on G9a. In addition, we demonstrated that TSPAN1 displayed a positive transcriptional regulatory effect on FAM110A. Collectively, FAM110A plays an oncogenic role in PDAC, and the newly identified TSPAN1/FAM110A/HIST1H2BK/G9a pathway is involved in the modulation of pancreatic cancer progression and provides a novel prognostic and therapeutic strategy for pancreatic cancer treatment.
FAM110A属于FAM110家族,其主要在与细胞周期相关的生物学过程中发挥作用。然而,FAM110A参与的生物学功能在很大程度上尚不明确。特别是,其在癌症中的潜在作用仍然未知。本研究的目的是揭示FAM110A在胰腺癌中的作用和机制。基于生物信息学数据库、qPCR和蛋白质免疫印迹分析,我们验证了FAM110A在胰腺导管腺癌(PDAC)中表达水平升高。随后,利用FAM110A、HIST1H2BK和TSPAN1过表达或敲低的稳定转染细胞进行生物学功能研究以探索其在PDAC中的作用,并……采用RNA测序、蛋白质免疫印迹和荧光素酶报告基因分析来探究FAM110A在PDAC中的作用机制,并通过肿瘤表型拯救实验验证所涉及的信号通路。在本研究中,我们首次证明FAM110A是一种癌基因,并促进胰腺癌细胞增殖、迁移、侵袭和肿瘤发生。HIST1H2BK被鉴定为FAM110A下游靶点,而敲低HIST1H2BK可消除FAM110A过表达所引起的促进作用。此外,我们首次揭示了HIST1H2BK在胰腺癌中的致癌作用,且HIST1H2BK促进肿瘤的能力可能与其对G9a的调控作用有关联。另外,我们证明TSPAN1对FAM110A具有正向转录调控作用。总体而言,FAM110A在PDAC中发挥致癌作用,新发现TSPAN1/FAM110A/HIST1H2BK/G9a信号通路参与调节胰腺癌进展,并为胰腺癌治疗提供了一种新的预后和治疗策略。